Mechanical Properties Analysis of Maglev Vehicle Suspension Mechanism

Li Jie, G. Dinggang, Xu Minghui, Li Guanyuan
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Abstract

In this paper, the suspension mechanism of maglev vehicle is selected as the research object, and the strength and fatigue life are analyzed after three-dimensional modeling, which provides the theoretical basis for the design, development and optimization of maglev vehicle. Firstly, the three-dimensional model of suspension mechanism of maglev vehicle is imported into Hypermesh to establish the finite element model of the whole suspension mechanism. According to the data provided by SMT, various load conditions are applied to the suspension mechanism. Then, the finite element model is imported into Ansys to obtain the displacement, stress and fatigue life contours under various working conditions. According to the analysis results of static strength and fatigue strength, the structure of the suspension mechanism can be optimized to meet the design requirements of strength and fatigue life finally.
磁悬浮车辆悬挂机构力学性能分析
本文选取磁悬浮车辆的悬架机构作为研究对象,通过三维建模对其强度和疲劳寿命进行分析,为磁悬浮车辆的设计、开发和优化提供理论依据。首先,将磁悬浮车辆悬架机构的三维模型导入Hypermesh,建立整个悬架机构的有限元模型;根据SMT提供的数据,将各种载荷条件应用于悬挂机构。然后将有限元模型导入Ansys中,得到各种工况下的位移、应力和疲劳寿命轮廓。根据静强度和疲劳强度分析结果,对悬架机构进行结构优化,最终达到强度和疲劳寿命的设计要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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